Reinforcing effect of single-wall carbon nanotubes on the LiNi0.6CO0.2Mn0.2O2 composite cathode for high-energy-density all-solid-state Li-ion batteries

被引:22
|
作者
Woo, Min-Hong [1 ]
Didwal, Pravin N. [2 ]
Kim, Hee-Joong [1 ]
Lim, Jin-Sub [1 ]
Nguyen, An-Giang [2 ]
Jin, Chang-Soo [3 ]
Chang, Duck Rye [1 ]
Park, Chan-Jin [2 ]
机构
[1] Korea Inst Ind Technol, Appl Opt & Energy Res Grp, 208-6 Cheomdangwagiro, Gwangju 61012, South Korea
[2] Chonnam Natl Univ, Dept Mat Sci & Engn, 77 Yongbong Ro, Gwangju 61186, South Korea
[3] Korea Inst Energy Res, 152 Gajeong Ro, Daejeon 34129, South Korea
基金
新加坡国家研究基金会;
关键词
LiNi(0.6)CO(0.2)Mn(0.2)O(2 )cathode; Single wall carbon nanotube; All-solid-state Li-ion batteries; High energy density; LITHIUM; ELECTRODE; CAPACITY; NI; PERFORMANCE; ADDITIVES; OXIDE;
D O I
10.1016/j.apsusc.2021.150934
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Enhancing the effective electronic transportation pathways and high loading mass of cathode are the challenges for high energy density solid-state batteries. We successfully enhanced significantly the electrochemical characteristics of all-solid-state Li-ion battery (ASSLIB) composed of graphite/SiOx anode, PVDF-HFP/Al2O3 based composite solid polymer electrolyte (CSPE), and LiNi0.6CO0.2Mn0.2O2 cathode with high proportion of 96.94 wt% in cathode by employing only small amount (0.06 wt%) of SWCNT in electrodes. The Li/CSPE/NCM@CNT cell maintained a capacity of 2.31 mAh cm(-2) at rate of 0.5C with a capacity retention of similar to 93% over 50 cycles. Moreover, The Li/CSPE/G-SiOx@CNT cell delivered an areal charge capacity of 3.7 mAh cm(-2) at a rate of 0.5C. Furthermore, the ASSLIBs with a high cathode mass loading of 36.4 mg cm(-2) delivered a high areal capacity of 4.04 mAh cm(-2) and successfully operated for longer than 300 cycles at rate of 0.5C. The ASSLIBs show excellent cyclability with capacity retention of similar to 80% and coulombic efficiency of approximately 100%, even at a considerably high cathode mass loading of 36.4 mg cm(-2) at a rate of 0.5C. The SWCNT form a conductive network throughout the electrodes by providing prolonged electron transport pathways and enhance the overall electrochemical properties of ASSLIBs.
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页数:12
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